Patents by Inventor Jong-Soo Lim
Jong-Soo Lim has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 8934834Abstract: Provided are an on-channel repeater and an on-channel repeating method.Type: GrantFiled: November 9, 2007Date of Patent: January 13, 2015Assignee: Electronics and Telecommunications Research InstituteInventors: Sung-Ik Park, Heung-Mook Kim, Jae-Hyun Seo, Ho-Min Eum, Jae-Young Lee, Yong-Tae Lee, Jong-Soo Lim, Soo-In Lee
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Patent number: 8767890Abstract: Provided is an apparatus and method for analyzing identification (ID) signals by converting radio frequency (RF) signals which are transmitted with an ID signal added thereto by a transmitting part, e.g., a plurality of transmitters or repeaters, into signals of a desired band; creating ID signals that are identical to the ID signals added to the RF signals; calculating correlation values between the converted signals and the created ID signals based on partial correlation; and extracting channel profile of multi-path signals caused by a channel between the transmitting part and the ID signal analyzing apparatus from the correlation value. The technology of the present research is applied to broadcasting and communication.Type: GrantFiled: October 12, 2007Date of Patent: July 1, 2014Assignee: Electronics and Telecommunications Research InstituteInventors: Sung-Ik Park, Jae-Young Lee, Jae-Hyun Seo, Ho-Min Eum, Heung-Mook Kim, Jong-Soo Lim, Soo-In Lee
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Publication number: 20140181884Abstract: Provided are a transmitting and receiving system for non-realtime based digital realistic broadcasting, and a method thereof. The transmitting system includes a broadcasting TS generator for generating a 2-D TS for a 2-D image and an auxiliary TS for auxiliary information necessary for realistic broadcasting of the 2-D image, and a transmitter for transmitting the generated auxiliary transport stream before a corresponding broadcasting time and transmitting the generated 2-D transport stream according to a corresponding broadcasting schedule.Type: ApplicationFiled: March 6, 2014Publication date: June 26, 2014Applicant: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTEInventors: Sung-Hoon KIM, Jong-Soo LIM, Soo-In LEE, Kug-Jin YUN, Hyoungsoo LIM, Yang-Su KIM
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Patent number: 8681911Abstract: Provided is an identification signal analyzing apparatus and method for compensating power of a channel profile occurring at a conventional identification signal analyzing apparatus by using a power compensation. The identification signal analyzing apparatus includes: an identification signal generator for generating an identification signal identical to a known identification signal inserted by a transmission device; a partial correlator for calculating a correlation value between a received signal including the known identification signal inserted by the transmission device and the identification signal generated by the identification signal generator through a partial correlation; a power compensator for compensating power of the correlation value calculated by the partial correlator; and a channel profile extractor for extracting a channel profile from the correlation value compensated by the power compensator.Type: GrantFiled: May 15, 2008Date of Patent: March 25, 2014Assignee: Electronics and Telecommunications Research InstituteInventors: Jae-Young Lee, Sung-Ik Park, Ho-Min Eum, Jae-Hyun Seo, Heung-Mook Kim, Jong-Soo Lim, Soo-In Lee
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Patent number: 8619987Abstract: Disclosed is a system for transmitting encrypted broadcast signals to different transmitters on a single frequency network (SFN) in a digital broadcasting system. The system for transmitting encrypted broadcast signals on the SFN includes: a main broadcasting system for transmitting encrypted broadcast signals including data streams and transmitter identification information (TII) through a main broadcasting network; a repeating system for amplifying encrypted broadcast signals of the main broadcasting network and transmitting the amplified broadcast signals, or modulating and amplifying streams input by the main broadcasting system through a private line and repeating broadcast signals of the main broadcasting system through a repeating network; and a decrypting key provider for receiving a decrypting key value from the main broadcasting or repeating system and transmitting a user authentication and decrypting key to a charged subscriber terminal through a mobile communication network.Type: GrantFiled: November 4, 2005Date of Patent: December 31, 2013Assignees: KT Corporation, Electronics and Telecommunications Research InstituteInventors: Chung-Pyo Hong, Tae-June Chae, Won-Jin Park, Hyun Lee, Soo-In Lee, Gwang-Soon Lee, Bong-Ho Lee, Jong-Soo Lim
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Patent number: 8520751Abstract: Provided is a channel estimation apparatus and method using a linear/nonlinear average in a wireless communication system. The present research provides a channel estimation apparatus and method for estimating a channel between a transmitter and a receiver from a pilot-inserted OFDM signal and linearly or nonlinearly averaging the estimating channel, thereby preventing the equalizer performance from being degraded by noise component of the estimated channel and noise amplification caused by deep fading. The channel estimation apparatus includes: a channel estimation unit configured to estimate a channel coefficient of a channel between a transmitter and a receiver from a pilot-inserted carrier signal according to pilot arrangement; and a linear/nonlinear averaging unit configured to linearly or nonlinearly averaging the estimated channel coefficient, thereby preventing an equalizer performance from being degraded by noise component existing in the channel and noise amplification caused by deep fading.Type: GrantFiled: October 20, 2007Date of Patent: August 27, 2013Assignee: Electronics and Telecommunications Research InstituteInventors: Sung-Ik Park, Hyoung-Soo Lim, Heung-Mook Kim, Jong-Soo Lim, Soo-In Lee
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Patent number: 8514960Abstract: Provided are an apparatus and method for compensating a feedback path distortion in a digital broadcasting signal. The apparatus for improving a performance of a pre-equalizer in a transmitter of a digital broadcasting system having a feedback path for adaptively generating a filter coefficient of the pre-equalizer, includes a reference signal generator for generating a reference radio frequency (RF) signal, a feedback path estimator for estimating transmission band characteristic information for the feedback path based on the reference RF signal generated from the reference signal generator, and a feedback path compensator for compensating a demodulated signal transferred through the feedback path based on the estimated transmission band characteristic information from the feedback path estimator and generating a filter coefficient of the pre-equalizer.Type: GrantFiled: December 5, 2007Date of Patent: August 20, 2013Assignee: Electronics and Telecommunications Research InstituteInventors: Jae-Hyun Seo, Heung-Mook Kim, Ho-Min Eum, Sung-Ik Park, Jae-Young Lee, Jong-Soo Lim, Soo-In Lee
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Patent number: 8472872Abstract: An on-channel repeating apparatus and method is provided. The method includes subtracting a replica of a feedback signal from a signal received from a main transmitter or another repeating apparatus; demodulating and equalizing the signal to remove noise, a multipath signal, and the remaining feedback signal from the signal; inserting identification signal having good correlation properties into the signal; modulating the signal; and transmitting the modulated signal.Type: GrantFiled: August 20, 2008Date of Patent: June 25, 2013Assignee: Electronics and Telecommunications Research InstituteInventors: Sung Ik Park, Heung Mook Kim, Jong-Soo Lim, Soo In Lee
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Patent number: 8442098Abstract: Provided are a distributed repeater for repeating output signals identical to input signals through a channel different from that of main transmitter signals but identical to channels of other distributed repeaters, and a distributed repeating method thereof. The distributed repeater includes: a pre-processing unit configured to receive a radio frequency (RF) signal transmitted from an external device and demodulate the RF signal into a baseband signal; an equalizer configured to equalize the baseband signal to correct a distortion occurring on a transmission channel; an identification signal generation and insertion unit configured to generate an identification signal for identification of the distributed repeater and network conditioning, and insert the identification signal in the equalized baseband signal; and a post-processing unit configured to convert the baseband signal from the identification signal generation and insertion unit into an RF signal, and send the RF signal.Type: GrantFiled: November 30, 2007Date of Patent: May 14, 2013Assignee: Electronics and Telecommunications Research InstituteInventors: Sung-Ik Park, Jae-Hyun Seo, Ho-Min Eum, Jae-Young Lee, Heung-Mook Kim, Yong-Tae Lee, Jong-Soo Lim, Soo-In Lee
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Patent number: 8411801Abstract: Provided is an apparatus and method for estimating inverse channel of a repeater's receiving channel, which ensures stability and causality by generating a time-domain filter coefficient having information on an inverse channel of repeater's receiving channel from a signal transmitted from a main transmitter or another repeater. The apparatus includes: a channel estimator for estimating a channel established by a transmission path from a received signal; an inverse minimum phase filter coefficient generator for generating inverse channel of a minimum phase channel from the estimated channel, and converting the inverse channel of the minimum phase channel into a time-domain filter coefficient; an inverse group delay filter coefficient generator for generating a time-domain filter coefficient by using the estimated channel and the minimum phase channel; and a combiner for generating an inverse channel of a receiving channel in a time domain by combining the filter coefficient and the filter coefficient.Type: GrantFiled: May 6, 2008Date of Patent: April 2, 2013Assignee: Electronics and Telecommunications Research InstituteInventors: Sung-Ik Park, Heung-Mook Kim, So-Ra Park, Yong-Tae Lee, Jong-Soo Lim, Soo-In Lee
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Patent number: 8364074Abstract: Provided is an on-channel repeater capable of removing feedback signals based on pilot partitioning, which can efficiently remove a feedback signal by quickly coping with even a situation in which a feedback channel changes rapidly, by reducing a filter-coefficient update interval, i.e., increasing the number of times of filter-coefficient creation, through pilot partitioning, and a method thereof. The on-channel repeater includes: a receiver for receiving a signal; a subtractor for subtracting a replica of a feedback signal from the signal received in the receiver to remove the feedback signal; a replica creator for creating a filter coefficient using pilot partitioning, creating a replica of the feedback signal using the created filter coefficient, and feeding back the created replica to the subtractor; and a transmitter for transmitting an output signal of the subtractor.Type: GrantFiled: June 10, 2008Date of Patent: January 29, 2013Assignee: Electronics and Telecommunications Research InstituteInventors: Sung-Ik Park, Yong-Tae Lee, Jong-Soo Lim, Soo-In Lee, Ji-Bong Lee, Wan-Jin Kim, Hyoung-Nam Kim, Kyung-Sik Son
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Patent number: 8238820Abstract: Provided is an on-channel repeater, which includes a receiver for receiving radio frequency (RF) signals; a subtractor for subtracting replica from the RF signals to thereby produce output signals of the subtractor; a repeating process unit for performing a repeating process onto the output signals of the subtractor; and a replica generator for calculating replica based on the output signals of the subtractor and the signals obtained after repeating process performed thereon and feeding the replica back to the subtractor.Type: GrantFiled: July 22, 2009Date of Patent: August 7, 2012Assignee: Electronics and Telecommunications Research InstituteInventors: Sung-Ik Park, Heung-Mook Kim, Jae-Young Lee, Jae-Hyun Seo, Ho-Min Eum, Yong-Tae Lee, Jong-Soo Lim, Soo-In Lee
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Apparatus and method for selecting optimal signal using auxiliary equalization in diversity receiver
Patent number: 8180005Abstract: Provided are an apparatus and method for selecting an optimal signal using auxiliary equalization in a diversity receiver. The optimal signal selecting apparatus includes: a plurality of sync recovery units for extracting sync information from baseband signals, which are candidate signals, except a baseband signal selected as a current optimal signal a plurality of auxiliary equalizers for channel-equalizing the candidate signals based on the extracted sync information; a plurality of SNR measuring units for measuring signal-to-noise ratios (SNRs) of the candidate signals inputted to the auxiliary equalizers and the candidates signals equalized in the auxiliary equalizers; and an optimal signal selector for selecting an optimal candidate signal from the candidate signals by using the extracted sync information and the measured SNRs, and replacing the optimal signal with the optimal candidate signal when reception quality of the current optimal signal is poor.Type: GrantFiled: November 7, 2006Date of Patent: May 15, 2012Assignee: Electronics and Telecommunications Research InstituteInventors: Ju-Yeun Kim, Young-Su Kim, Jae-Hwui Bae, Hyun Lee, Jong-Soo Lim, Soo-In Lee -
Patent number: 8170470Abstract: Provided are an on-channel repeater for repeating an output signal the same as an input signal on channel by removing feedback signals caused by low isolation of a transmission/reception antenna by converting a transmitted Radio Frequency (RF) signal into a signal of a predetermined band and subtracting a replica of the feedback signal from the converted signal, and by compensating for channel distortion of a reception signal by estimating an inverse of reception channel from a signal acquired by removing the feedback signal, and an on-channel repeating method.Type: GrantFiled: November 9, 2007Date of Patent: May 1, 2012Assignee: Electronics and Telecommunications Research InstituteInventors: Sung-Ik Park, Heung-Mook Kim, Ho-Min Eum, Jae-Hyun Seo, Jae-Young Lee, Yong-Tae Lee, Jong-Soo Lim, Soo-In Lee
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Publication number: 20110111722Abstract: Provided is an identification signal analyzing apparatus and method for compensating power of a channel profile occurring at a conventional identification signal analyzing apparatus by using a power compensation. The identification signal analyzing apparatus includes: an identification signal generator for generating an identification signal identical to a known identification signal inserted by a transmission device; a partial correlator for calculating a correlation value between a received signal including the known identification signal inserted by the transmission device and the identification signal generated by the identification signal generator through a partial correlation; a power compensator for compensating power of the correlation value calculated by the partial correlator; and a channel profile extractor for extracting a channel profile from the correlation value compensated by the power compensator.Type: ApplicationFiled: May 15, 2008Publication date: May 12, 2011Inventors: Jae-Young Lee, Sung-Ik Park, Ho-Min Eum, Jae-Hyun Seo, Heung-Mook Kim, Jong-Soo Lim, Soo-In Lee
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Publication number: 20110111694Abstract: An on-channel repeating apparatus and method is provided. The method includes subtracting a replica of a feedback signal from a signal received from a main transmitter or another repeating apparatus; demodulating and equalizing the signal to remove noise, a multipath signal, and the remaining feedback signal from the signal; inserting identification signal having good correlation properties into the signal; modulating the signal; and transmitting the modulated signal.Type: ApplicationFiled: August 20, 2008Publication date: May 12, 2011Applicant: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTEInventors: Sung Ik Park, Heung Mook Kim, Jong-Soo Lim, Soo In Lee
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Publication number: 20110013688Abstract: Provided are an apparatus and method for compensating a feedback path distortion in a digital broadcasting signal. The apparatus for improving a performance of a pre-equalizer in a transmitter of a digital broadcasting system having a feedback path for adaptively generating a filter coefficient of the pre-equalizer, includes a reference signal generator for generating a reference radio frequency (RF) signal, a feedback path estimator for estimating transmission band characteristic information for the feedback path based on the reference RF signal generated from the reference signal generator, and a feedback path compensator for compensating a demodulated signal transferred through the feedback path based on the estimated transmission band characteristic information from the feedback path estimator and generating a filter coefficient of the pre-equalizer.Type: ApplicationFiled: December 5, 2007Publication date: January 20, 2011Inventors: Jae-Hyun Seo, Heung-Mook Kim, Ho-Min Eum, Sung-Ik Park, Jae-Young Lee, Jong-Soo Lim, Soo-In Lee
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Publication number: 20100321577Abstract: Provided are a distributed repeater for repeating output signals identical to input signals through a channel different from that of main transmitter signals but identical to channels of other distributed repeaters, and a distributed repeating method thereof. The distributed repeater includes: a pre-processing unit configured to receive a radio frequency (RF) signal transmitted from an external device and demodulate the RF signal into a baseband signal; an equalizer configured to equalize the baseband signal to correct a distortion occurring on a transmission channel; an identification signal generation and insertion unit configured to generate an identification signal for identification of the distributed repeater and network conditioning, and insert the identification signal in the equalized baseband signal; and a post-processing unit configured to convert the baseband signal from the identification signal generation and insertion unit into an RF signal, and send the RF signal.Type: ApplicationFiled: November 30, 2007Publication date: December 23, 2010Inventors: Sung-Ik Park, Jae-Hyun Seo, Ho-Min Eum, Jae-Young Lee, Heung-Mook Kim, Yong-Tae Lee, Jong-Soo Lim, Soo-In Lee
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Publication number: 20100311323Abstract: Provided are an on-channel repeater and an on-channel repeating method.Type: ApplicationFiled: November 9, 2007Publication date: December 9, 2010Applicant: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTEInventors: Sung-Ik Park, Heung-Mook Kim, Jae-Hyun Seo, Ho-Min Eum, Jae-Young Lee, Yong-Tae Lee, Jong-Soo Lim, Soo-In Lee
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Publication number: 20100310023Abstract: Provided is an apparatus and method for estimating inverse channel of a repeater's receiving channel, which ensures stability and causality by generating a time-domain filter coefficient having information on an inverse channel of repeater's receiving channel from a signal transmitted from a main transmitter or another repeater. The apparatus includes: a channel estimator for estimating a channel established by a transmission path from a received signal; an inverse minimum phase filter coefficient generator for generating inverse channel of a minimum phase channel from the estimated channel, and converting the inverse channel of the minimum phase channel into a time-domain filter coefficient; an inverse group delay filter coefficient generator for generating a time-domain filter coefficient by using the estimated channel and the minimum phase channel; and a combiner for generating an inverse channel of a receiving channel in a time domain by combining the filter coefficient and the filter coefficient.Type: ApplicationFiled: May 6, 2008Publication date: December 9, 2010Applicant: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTEInventors: Sung-Ik Park, Heung-Mook Kim, So-Ra Park, Yong-Tae Lee, Jong-Soo Lim, Soo-In Lee